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轴向甲硫氨酸对CuA中心还原电位的影响远小于对蓝铜中心还原电位的影响。

Axial methionine has much less influence on reduction potentials in a CuA center than in a blue copper center.

作者信息

Hwang Hee Jung, Berry Steven M, Nilges Mark J, Lu Yi

机构信息

Department of Chemistry, University of Illinois at Urbana-Champaign, Illinois 61801, USA.

出版信息

J Am Chem Soc. 2005 May 25;127(20):7274-5. doi: 10.1021/ja0501114.

Abstract

The role of the highly conserved axial methionine of the purple CuA center in an engineered CuA azurin on modulating the reduction potentials of the copper center was investigated by a systematic replacement of the methionine with glutamate, aspartate, and leucine. In contrast to the same substitutions in the structurally related blue copper azurin, much smaller changes in reduction potential were observed in the CuA azurin upon replacing the methionine ligand with negatively charged Glu (-8 mV) and Asp (-5 mV) and more hydrophobic Leu (+16 mV). These findings are important in understanding the different roles of the two cupredoxins. The diamond core Cu2S2(Cys) structure of the CuA is much more resistant to variations of axial ligand interactions than the distorted tetrahedral structure of the blue copper protein. This difference may translate into a much wider range of reduction potentials (>1000 mV) for blue copper proteins that transfer electrons to a variety of partners in many different biological systems and a much narrower range of reduction potentials (<40 mV) for CuA proteins where a small difference in reduction potentials between the CuA and its redox partners is required.

摘要

通过用谷氨酸、天冬氨酸和亮氨酸系统地取代甲硫氨酸,研究了工程化的含A中心铜蛋白中紫色含A中心高度保守的轴向甲硫氨酸在调节铜中心还原电位方面的作用。与结构相关的蓝色铜蛋白中的相同取代不同,在用带负电荷的谷氨酸(-8毫伏)和天冬氨酸(-5毫伏)以及疏水性更强的亮氨酸(+16毫伏)取代甲硫氨酸配体后,含A中心铜蛋白的还原电位变化要小得多。这些发现对于理解这两种铜氧化还原蛋白的不同作用很重要。含A中心的菱形核心Cu2S2(半胱氨酸)结构比蓝色铜蛋白的扭曲四面体结构对轴向配体相互作用变化的抵抗力要强得多。这种差异可能导致蓝色铜蛋白在许多不同生物系统中向多种伙伴传递电子时具有更宽的还原电位范围(>1000毫伏),而对于含A中心的蛋白,由于含A中心与其氧化还原伙伴之间的还原电位差异较小,其还原电位范围要窄得多(<40毫伏)。

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